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首页> 外文期刊>Macromolecular Research >Preparation and characterization of polypropylene/waste ground rubber tire powder microcellular composites by supercritical carbon dioxide
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Preparation and characterization of polypropylene/waste ground rubber tire powder microcellular composites by supercritical carbon dioxide

机译:超临界二氧化碳制备聚丙烯/废胶粉轮胎微粉复合材料及其表征

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摘要

In order to obtain ‘value added products’ from polypropylene (PP)/waste ground rubber tire powder (WGRT) composites, PP/WGRT microcellular foams were prepared via supercritical carbon dioxide. The effects of blend composition and processing condition on the cell size, cell density and relative density of PP/WGRT microcellular composites were studied. The results indicated that the microcellular structure was dependent on blend composition and processing condition. An increased content of waste ground rubber tire powder (WGRT) and maleic anhydride-grafted styrene-ethylene-butylene-styrene (SEBS-g-MA) reduced the cell size, and raised the cell density and relative density, whereas a higher saturation pressure increased the cell size, and reduced the cell density and relative density. With increasing saturation temperature, the cell size increased and the relative density decreased, whereas the cell density initially increased and then decreased.
机译:为了从聚丙烯(PP)/废磨橡胶轮胎粉(WGRT)复合材料中获得“增值产品”,PP / WGRT微孔泡沫是通过超临界二氧化碳制备的。研究了共混物的组成和加工条件对PP / WGRT微孔复合材料的孔尺寸,孔密度和相对密度的影响。结果表明,微孔结构取决于共混物的组成和加工条件。废磨轮胎胶粉(WGRT)和马来酸酐接枝的苯乙烯-乙烯-丁烯-苯乙烯(SEBS-g-MA)含量的增加减少了泡孔尺寸,增加了泡孔密度和相对密度,而饱和压力更高增加了细胞大小,并降低了细胞密度和相对密度。随着饱和温度的升高,泡孔尺寸增大,相对密度减小,而泡孔密度先增大然后减小。

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